Continuum- and Particle-Based Modeling of Human Red Blood Cells
Author:
Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/978-3-319-44680-6_63
Reference80 articles.
1. Abkarian M, Viallat A (2008) Vesicles and red blood cells in shear flow. Soft Matter 4:653
2. Alberts B, Johnson A, Lewis J, Raff M, Roberts K, Walter P (2002) Molecular biology of the cell. Garland Science, New York
3. Atzberger PJ, Kramer PR, Peskin CS (2007) A stochastic immersed boundary method for fluid-structure dynamics at microscopic length scales. J Comput Phys 224:1255–1292
4. Barber JO, Restrepo JM, Secomb TW (2011) Simulated red blood cell motion in microvessel bifurcations: Effects of cell–cell interactions on cell partitioning. Cardiovasc Eng Technol 2(4):349–360
5. Barthès-Biesel D (2016) Motion and deformation of elastic capsules and vesicles in flow. Annu Rev Fluid Mech 48:25–52
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